Electric machinery parameters and torques by current and energy perturbations from field computations. I. Theory and formulation and II: applications and results

N. Demerdash, T. Nehl
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引用次数: 6

Abstract

In these two-part companion papers the well-established energy/current (E/C) perturbation method of computation of machine winding inductances is reviewed. The method's efficacy in machine performance calculations is delineated and verified by comparison to experimental results. The critical role that winding inductance parameters have in modeling and simulation of the nonsinusoidal steady state time-domain (forced response) performance of electric machinery is demonstrated using state models in both the winding flux linkage and current-based frames of reference. The computed machine performance characteristics include profiles of winding inductances, induced terminal voltage waveforms, and instantaneous torque profiles that contain all the ripples due to the significant space harmonics in a machine. The method and associated formulations and techniques are shown to be very effective in both 2D-FE and 3D-FE electric machinery field solutions involving substantial degrees of saturation and complexity of construction. The machines analyzed include a 15-HP permanent magnet brushless DC motor, a 1.2-HP three-phase induction motor, and a 14.3 kVA three-phase modified Lundell alternator possessing very complex magnetic circuit geometries. The well-posedness of the method held true for all these cases, as well as many other case-studies briefly reviewed here.
由磁场计算的电流和能量扰动引起的电机参数和扭矩。1 .理论与公式;2 .应用与结果
在这两篇论文中,综述了已建立的计算电机绕组电感的能量/电流摄动法。通过与实验结果的对比,说明了该方法在机器性能计算中的有效性。利用绕组磁链和基于电流的参照系的状态模型,论证了绕组电感参数在电机非正弦稳态时域(强迫响应)性能建模和仿真中的关键作用。计算出的机器性能特征包括绕组电感、感应端子电压波形和瞬时转矩曲线,这些曲线包含了机器中由显著空间谐波引起的所有波纹。该方法和相关的公式和技术在涉及大量饱和度和结构复杂性的2D-FE和3D-FE电机领域解决方案中都显示出非常有效的效果。所分析的机器包括一台15马力的永磁无刷直流电机,一台1.2马力的三相感应电机,以及一台具有非常复杂磁路几何形状的14.3千伏安三相改进Lundell交流发电机。该方法的完备性适用于所有这些案例,以及这里简要回顾的许多其他案例研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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